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Fiber Blade (Mark V) – Solid Tungsten Carbide (Notched) - B645
B645

Fiber Blade (Mark V) – Solid Tungsten Carbide (Notched)

Solid Tungsten Carbide, Notched Edge — 117.5×15.6×0.89mm

Premium SteelSheffield · İngiltere

Notched-edge solid tungsten carbide fiber blade for Mark V fiber cutting machines. 117.5×15.6×0.89mm. The notched edge structure grips fibers for more controlled cutting. Tungsten carbide provides superior wear resistance.

  • Fully compatible with Mark V fiber cutting machines
  • 117.5×15.6×0.89mm precision dimensions
  • Solid tungsten carbide — maximum wear resistance
  • Notched edge — grips fibers for controlled cutting
📐 Available Sizes:
117.5×15.6×0.89mm
In Stock

Technical Specifications

MaterialSolid Tungsten Carbide
Dimensions117.5×15.6×0.89mm
Edge TypeNotched
CompatibilityMark V Fiber Cutting Machine

Why This Product?

Maximum Wear Resistance

Solid tungsten carbide hardness (~1500 HV) delivers 3-4x service life versus steel blades in demanding applications.

Notched Edge Grip

Notched edge structure grips fibers for more controlled, consistent cutting — ideal for slippery fiber types.

Precision Mark V Fit

117.5×15.6×0.89mm tolerance-matched for Mark V machines — direct drop-in replacement.

Applications

Fiberglass cutting
Carbon fiber cutting
Abrasive synthetic fiber cutting
High-wear fiber production lines

Detailed Information

The B645 notched solid tungsten carbide fiber blade is an advanced performance blade for Mark V chopped fiber cutting machines, measuring 117.5×15.6×0.89mm. The notched edge structure provides enhanced fiber grip for controlled cutting, while solid tungsten carbide delivers maximum wear resistance.

Technical Specifications

  • Dimensions: 117.5×15.6×0.89mm
  • Material: Solid Tungsten Carbide
  • Edge Type: Notched
  • Hardness: ~1500 HV
  • Machine Compatibility: Mark V Fiber Cutting Machine

Applications

Fiberglass, carbon fiber, aramid, and slippery fiber types where the notched edge provides better fiber grip. Ideal for high-wear production lines requiring maximum blade longevity.